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    • 5. 发明申请
    • Megavoltage imaging with a photoconductor based sensor
    • 用基于感光体的传感器进行Megavoltage成像
    • US20070023853A1
    • 2007-02-01
    • US11193162
    • 2005-07-29
    • Larry PartainGeorge Zentai
    • Larry PartainGeorge Zentai
    • H01L31/00
    • G01T1/24
    • A photodetector for detecting megavoltage (MV) radiation comprises a semiconductor conversion layer having a first surface and a second surface disposed opposite the first surface, a first electrode coupled to the first surface, a second electrode coupled to the second surface, and a low density substrate including a detector array coupled to the second electrode opposite the semiconductor conversion layer. The photodetector includes a sufficient thickness of a high density material to create a sufficient number of photoelectrons from incident MV radiation, so that the photoelectrons can be received by the conversion layer and converted to a sufficient of recharge carriers for detection by the detector array.
    • 用于检测兆伏特(MV)辐射的光电检测器包括半导体转换层,其具有与第一表面相对布置的第一表面和第二表面,耦合到第一表面的第一电极,耦合到第二表面的第二电极和低密度 衬底,包括耦合到与半导体转换层相对的第二电极的检测器阵列。 光电检测器包括足够厚度的高密度材料以从入射的MV辐射产生足够数量的光电子,使得光电子能够被转换层接收并转换成足够的再充电载体,以便由检测器阵列检测。
    • 6. 发明申请
    • METHOD AND SYSTEM FOR IDENTIFYING, ASSESSING, AND MANAGING CANCER GROWTH RATES AND POTENTIAL METASTASIS
    • 识别,评估和管理癌症生长率和潜在的细胞因子的方法和系统
    • US20130071333A1
    • 2013-03-21
    • US13623098
    • 2012-09-19
    • Larry PARTAINMingshan SUNEdward J. SEPPIRaisa PAVLYUCHKOVAArundhuti GANGULYStavros PRIONASJames E. CLAYTON
    • Larry PARTAINMingshan SUNEdward J. SEPPIRaisa PAVLYUCHKOVAArundhuti GANGULYStavros PRIONASJames E. CLAYTON
    • A61K49/04
    • G06F19/3431G06F19/00G06K9/6277G06K2209/053G16H50/30
    • Techniques described herein generally relate to identifying, assessing, and managing cancer growth rates and potential metastasis. Some example methods may include constructing one or more quantitative metrics for the potential metastasis in a selected population of other patients, acquiring a first set of numeric biomarker data for the patient before having placed a biomarker in the patient, acquiring a second set of numeric biomarker data for the patient after having placed the biomarker in the patient, determining a set of biomarker surrogate values for microvessel density information based on a mean numeric biomarker difference derived from the first set of numeric biomarker data and the second set of numeric biomarker data, determining a set of biomarker surrogate values for microvessel density information based on a mean numeric biomarker difference derived from the first set of numeric biomarker data and the second set of numeric biomarker data, and predicting quantitative and objective risk for the cancer growth rates and potential metastasis and adjusting a treatment plan based on the biomarker surrogate values and at least one of the one or more quantitative metrics.
    • 本文描述的技术通常涉及鉴定,评估和管理癌症生长速度和潜在转移。 一些示例性方法可以包括为所选择的其他患者群体中的潜在转移构建一个或多个定量度量,在将患者的生物标志物置于患者体内之前获取患者的第一组数值生物标志物数据,获取第二组数值生物标志物 基于从第一组数字生物标志物数据和第二组数值生物标志物数据导出的平均数值生物标志物差异,确定用于微血管密度信息的生物标记替代值的集合,确定患者的数据;确定 基于从第一组数值生物标志物数据和第二组数值生物标志物数据得出的平均数值生物标志物差异的微血管密度信息的一组生物标志物替代值,并预测癌症生长速率和潜在转移的定量和客观风险, 根据生物标志物代理调整治疗计划 值和至少一个一个或多个定量度量。